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加拿大Beaufort海沙质极冷滨面风暴成因混合流的海底响应
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作者 魏合龙 《海洋地质动态》 1996年第2期12-14,共3页
加拿大Beaufort海沙质极冷滨面风暴成因混合流的海底响应A.Hequette等滨面是指波浪未及破碎的浅滩带,为内陆架与浪击带之间的重要过渡区。由于演面水深较浅,水体受风及波浪振动造成的垂向混合作用影响,结果波浪振... 加拿大Beaufort海沙质极冷滨面风暴成因混合流的海底响应A.Hequette等滨面是指波浪未及破碎的浅滩带,为内陆架与浪击带之间的重要过渡区。由于演面水深较浅,水体受风及波浪振动造成的垂向混合作用影响,结果波浪振动流与常向流相互作用形成较强的底床... 展开更多
关键词 海洋 海沙质 滨面 风暴 混合流 海底响应
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A Study on Dynamic Response of Cable-Seabed Interaction 被引量:2
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作者 王飞 黄国樑 +1 位作者 邓德衡 涂兴华 《Journal of Shanghai Jiaotong university(Science)》 EI 2009年第4期443-449,共7页
A numerical method is developed to investigate the dynamic response of cable-seabed interaction in this paper. The motion of cable is described by the Lumped Parameter Method, while the seabed, unlike the prevailing s... A numerical method is developed to investigate the dynamic response of cable-seabed interaction in this paper. The motion of cable is described by the Lumped Parameter Method, while the seabed, unlike the prevailing simplified model of elastic foundation, is modeled as an irregular continuous rigid surface with rebound and friction existing, and the forces exerted by the seabed consist of normal counterforce and isotropic tangential Coulomb friction resistance. To describe the detailed dynamic response, two coefficients are introduced by analogy with the theory of rigid body collision with friction. The cable-seabed kinematic and dynamic contact conditions are formulated subsequently, and are used to incorporate the seabed effect into the cable dynamics to produce a set of ordinary differential governing equations. In this paper, we employ 4th order Runge-Kutta method to solve these equations. Several simulation cases are presented to illustrate the seabed effect. The results show that friction and impact have a prominent influence on the statics and dynamics of the cable. 展开更多
关键词 towed cable numerical simulation seabed interaction impact with friction
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